We present models and computational results which indicate that the spatial and temporal regularity seen in Proteus mirabilis swarm-colony development is largely an expression of a sharp age of dedifferentiation in the cell cycle from motile swarmer cells to immotile dividing cells (also called swimmer or vegetative cells.) This contrasts strongly with reaction-diffusion models of Proteus behavior that ignore or average out the age structure of the cell population and instead use only density-dependent mechanisms. We argue the necessity of retaining the explicit age structure, and suggest experiments that may help determine the underlying mechanisms empirically. Consequently, we advocate Proteus as a model organism for a multiscale understa...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutora:...
コンピュータシミュレーションで細胞の集団運動を理解する --物理学と生物学とを融合した新しい理論モデルの構築--. 京都大学プレスリリース. 2021-08-02.Cells coexist toge...
The primary goal of systems biologists is to understand the mechanics underlying complex...
In this paper we present continuous age- and space-structured models and numerical computations of P...
International audienceIn this paper we explain the biophysical principles which, according to us, go...
The bacterial species, Proteus mirabilis, is a unique bacteria that differentiates into different ce...
We develop theoretical equivalences between stochastic and deterministic models for populations of i...
We develop theoretical equivalences between stochastic and deterministic models for populations of i...
Proteus mirabilis colonies exhibit striking geometric regularity. Basic microbiological methods and ...
AbstractThe McKendrick-Von Foerster model is often used to model cell colonies with both constant an...
The process of polarization determines the head and tail of single cells. A mechanism of this kind f...
Abstract. Whereas aging is obvious in macroscopic organisms, it is not in single-celled ones, such a...
International audienceCells grown in culture act as a model system for analyzing the effects of anti...
Filamentous organisms represent an example where incomplete separation after cell division underlies...
Filamentous organisms represent an example where incomplete separation after cell division underlies...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutora:...
コンピュータシミュレーションで細胞の集団運動を理解する --物理学と生物学とを融合した新しい理論モデルの構築--. 京都大学プレスリリース. 2021-08-02.Cells coexist toge...
The primary goal of systems biologists is to understand the mechanics underlying complex...
In this paper we present continuous age- and space-structured models and numerical computations of P...
International audienceIn this paper we explain the biophysical principles which, according to us, go...
The bacterial species, Proteus mirabilis, is a unique bacteria that differentiates into different ce...
We develop theoretical equivalences between stochastic and deterministic models for populations of i...
We develop theoretical equivalences between stochastic and deterministic models for populations of i...
Proteus mirabilis colonies exhibit striking geometric regularity. Basic microbiological methods and ...
AbstractThe McKendrick-Von Foerster model is often used to model cell colonies with both constant an...
The process of polarization determines the head and tail of single cells. A mechanism of this kind f...
Abstract. Whereas aging is obvious in macroscopic organisms, it is not in single-celled ones, such a...
International audienceCells grown in culture act as a model system for analyzing the effects of anti...
Filamentous organisms represent an example where incomplete separation after cell division underlies...
Filamentous organisms represent an example where incomplete separation after cell division underlies...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutora:...
コンピュータシミュレーションで細胞の集団運動を理解する --物理学と生物学とを融合した新しい理論モデルの構築--. 京都大学プレスリリース. 2021-08-02.Cells coexist toge...
The primary goal of systems biologists is to understand the mechanics underlying complex...